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精神分裂症的多巴胺假说:现状与未来展望

The dopamine hypothesis of schizophrenia: current status, future prospects.

作者信息

Willner P

机构信息

Department of Psychology, University of Wales, Swansea, UK.

出版信息

Int Clin Psychopharmacol. 1997 Nov;12(6):297-308. doi: 10.1097/00004850-199711000-00002.

Abstract

The dopamine hypothesis of schizophrenia is reviewed in the context of recent advances in dopamine research. These include the following: the discovery that there are several subtypes of dopamine receptor, the recognition that the activity of dopamine neurons is controlled by negative feedback systems; insights into the functions of different subsystems of dopamine neurons; the discovery that different subsystems of dopamine neurons interact with one another; and a growing understanding of the functions and mode of operation of the forebrain regions that the dopamine projections innervate. The paper reviews some of the complexities that the dopamine hypothesis has encountered, and continues to encounter, with a particular focus on three issues: the adequacy of our understanding of neuroleptic drug action, the heterogeneity of schizophrenic symptoms and the paucity of direct evidence to support the hypothesis. It is concluded that schizophrenia does not reflect primary abnormalities of dopamine transmission, but probably does reflect abnormalities in systems that have an intimate interaction with the dopamine system. The primary substrates for schizophrenia will probably be found within the major targets of the ascending dopamine projections: the fronto-striato-pallido-thalamic loops, and the limbic structures, such as amygdala and hippocampus, with which the fronto-striatal system interacts.

摘要

本文在多巴胺研究最新进展的背景下,对精神分裂症的多巴胺假说进行了综述。这些进展包括:发现多巴胺受体存在多种亚型;认识到多巴胺神经元的活动受负反馈系统控制;深入了解多巴胺神经元不同子系统的功能;发现多巴胺神经元的不同子系统相互作用;以及对多巴胺投射所支配的前脑区域的功能和运作方式有了越来越多的认识。本文回顾了多巴胺假说已经遇到以及仍在遇到的一些复杂性问题,特别关注三个问题:我们对抗精神病药物作用的理解是否充分;精神分裂症症状的异质性;以及支持该假说的直接证据的匮乏。得出的结论是,精神分裂症并非反映多巴胺传递的原发性异常,但可能反映了与多巴胺系统密切相互作用的系统中的异常。精神分裂症的主要发病部位可能存在于多巴胺上行投射的主要靶点内:额叶 - 纹状体 - 苍白球 - 丘脑环路,以及额叶 - 纹状体系统与之相互作用的边缘结构,如杏仁核和海马体。

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